Reducing Scour around Semi-Elliptical Bridge Abutments: Application of Roughness Elements

Fluids Pub Date : 2023-11-25 DOI:10.3390/fluids8120306
Afsaneh Rezaie, Hossein Afzalimehr, Sina Sohrabi, Mohammad Nazari-Sharabian, Moses Karakouzian, Reza Ahmadi
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Abstract

Bridge abutments in river channels induce local scour. Recent research indicates that introducing roughness elements on the surface of the bridge abutments can influence the flow pattern around the abutment, reducing the intensity of eddies and diverting the flow away from the abutment. The roughness elements protruding from the abutment surface, with specific thickness, protrusion, and spacing, influence the scour process by enhancing turbulence. This study investigates the impact of roughness elements and their spacing on clear water scour at bridge abutments. The results reveal a noteworthy reduction in scour depth as the spacing between roughness elements decreases and their thickness increases on the abutment surface. Furthermore, an increase in the roughness spacing to roughness protrusion ratio (s/p) leads to an amplified scour depth. Additionally, the presence of roughness on the abutment surface alters the slope characteristics of the scour hole in response to changes in flow depth. In particular, the absence of roughness exhibits an increased slope as flow depth increases, while the presence of roughness results in a reduced slope across all three flow depths examined. Notably, the maximum slope and depth of the scour hole under the influence of roughness elements occurs at angles of 50 to 70 degrees. Also, the slope and depth of the scour hole decrease to a minimum value at specific roughness dimensions (s = 0.17 L and p = 0.17 L).
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减少半椭圆形桥墩周围的冲刷:粗糙度元素的应用
河道中的桥墩会引起局部冲刷。最新研究表明,在桥墩表面引入粗糙度元素可以影响桥墩周围的水流模式,降低漩涡强度,使水流偏离桥墩。从桥墩表面突出的粗糙度元素具有特定的厚度、突出度和间距,可通过增强湍流影响冲刷过程。本研究探讨了粗糙度元素及其间距对桥墩清水冲刷的影响。研究结果表明,随着粗糙度元素间距的减小和粗糙度元素在桥墩表面厚度的增加,冲刷深度明显减小。此外,粗糙度间距与粗糙度突起比(s/p)的增加也会导致冲刷深度的增加。此外,基台表面粗糙度的存在也会改变冲刷孔的坡度特征,以应对水流深度的变化。特别是,随着水流深度的增加,没有粗糙度的冲刷孔的斜率会增加,而有粗糙度的冲刷孔的斜率则会减小。值得注意的是,在粗糙度元素的影响下,冲蚀孔的最大坡度和深度出现在 50 至 70 度角处。此外,在特定的粗糙度尺寸(s = 0.17 L 和 p = 0.17 L)下,冲刷孔的坡度和深度会减小到最小值。
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